A S4-kg copper block initially at 140°C is dropped into an insulated tank that contains 90 L of water at 10°C. Determine the final equilibrium temperature and the total entropy change for this process. The specific heat of water at 25°C is cp=4.18 kJ/kg-K. The density of water is 997 kg/m3. The specific heat of copper t 27°C is cp=0.386 kJ/kg-K.

Elements Of Electromagnetics
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A 54-kg copper block initially at 140°C is dropped into an insulated tank that contains 90 L of water at 10°C. Determine the final
equilibrium temperature and the total entropy change for this process. The specific heat of water at 25°C is cp=4.18 kJ/kg-K. The
density of water is 997 kg/m³. The specific heat of copper at 27°C is cp=0.386 kJ/kg-K.
90 L
Water
Copper
K.
The final equilibrium temperature is
The total entropy change during this process is
KJ/K.
Transcribed Image Text:A 54-kg copper block initially at 140°C is dropped into an insulated tank that contains 90 L of water at 10°C. Determine the final equilibrium temperature and the total entropy change for this process. The specific heat of water at 25°C is cp=4.18 kJ/kg-K. The density of water is 997 kg/m³. The specific heat of copper at 27°C is cp=0.386 kJ/kg-K. 90 L Water Copper K. The final equilibrium temperature is The total entropy change during this process is KJ/K.
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